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US20180036755A1 - Liquid-Dispensing System, Apparatus and Method - Google Patents

Liquid-Dispensing System, Apparatus and Method
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Publication number
US20180036755A1
US20180036755A1US15/666,928US201715666928AUS2018036755A1US 20180036755 A1US20180036755 A1US 20180036755A1US 201715666928 AUS201715666928 AUS 201715666928AUS 2018036755 A1US2018036755 A1US 2018036755A1
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United States
Prior art keywords
liquid
nozzle
dispensed
sensor
dispensing system
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US15/666,928
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US10906057B2 (en
Inventor
Christian Illemann
Karl Pilch
Herbert Priess
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Infineon Technologies AG
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Infineon Technologies AG
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Assigned to INFINEON TECHNOLOGIES AGreassignmentINFINEON TECHNOLOGIES AGASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: Priess, Herbert, PILCH, KARL, Illemann, Christian
Publication of US20180036755A1publicationCriticalpatent/US20180036755A1/en
Priority to US17/107,060priorityCriticalpatent/US12064779B2/en
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Publication of US10906057B2publicationCriticalpatent/US10906057B2/en
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Abstract

A liquid-dispensing system includes at least one nozzle configured to dispense a liquid. The liquid-dispensing system includes at least one sensor module, configured to provide a sensor signal comprising information related to whether liquid is dispensed by the at least one nozzle. At least a part of the at least one sensor is located in proximity of the nozzle.

Description

Claims (20)

What is claimed is:
1. A liquid-dispensing system comprising:
a nozzle configured to dispense a liquid; and
a sensor configured to provide a sensor signal comprising information related to whether liquid is dispensed by the nozzle,
wherein a part of the sensor is located in proximity of the nozzle.
2. The liquid-dispensing system according toclaim 1, wherein the sensor comprises an optical sensor configured to generate the sensor signal based on light received after interacting with liquid dispensed by the nozzle.
3. The liquid-dispensing system according toclaim 1, further comprising an electromagnetic emitter configured to emit electromagnetic radiation towards a path of falling of liquid dispensed by the nozzle, wherein the sensor is configured to provide the sensor signal based on an influence of dispensed liquid on the electromagnetic radiation.
4. The liquid-dispensing system according toclaim 3, further comprising an aperture configured to shield the sensor from a part of the electromagnetic radiation emitted by the electromagnetic emitter.
5. The liquid-dispensing system according toclaim 4, wherein a lateral distance between the aperture and the dispensed liquid is less than 2 cm.
6. The liquid-dispensing system according toclaim 4, wherein the aperture comprises a minimal width of less than to mm and more than 0.4 mm.
7. The liquid-dispensing system according toclaim 3, wherein the sensor is configured to determine the sensor signal based on a refraction of the emitted electromagnetic radiation caused by dispensed liquid.
8. The liquid-dispensing system according toclaim 3, wherein the electromagnetic emitter is configured to emit light having a wavelength between 100 nm and 100 μm.
9. The liquid-dispensing system according toclaim 3, wherein the electromagnetic emitter is configured to emit electromagnetic radiation at a wavelength, at which more than 30% of a portion of the electromagnetic radiation hitting liquid dispensed by the nozzle passes liquid dispensed by the nozzle.
10. The liquid-dispensing system according toclaim 3, wherein a portion of the electromagnetic radiation emitted by the electromagnetic emitter received by the sensor while liquid is dispensed by the nozzle is at least 10% higher or lower than a portion of the electromagnetic radiation emitted by the electromagnetic emitter received by the sensor while no liquid is dispensed by the nozzle.
11. The liquid-dispensing system according toclaim 1, further comprising an acoustic emitter configured to emit ultrasound having a frequency between 20 kHz and 5 GHz, wherein the sensor is configured to generate the sensor signal based on an influence of dispensed liquid on the ultrasound.
12. The liquid-dispensing system according toclaim 1, wherein the sensor is configured to induce eddy currents in liquid dispensed by the nozzle, and wherein the sensor is configured to generate the sensor signal based on an intensity of eddy currents induced in the dispensed liquid.
13. The liquid-dispensing system according toclaim 1, wherein a lateral distance between the sensor and liquid dispensed by the nozzle is less than 5 cm.
14. The liquid-dispensing system according toclaim 1, further comprising a housing for the sensor, the housing being chemically resistant against sulfuric acid, nitric acid, or hydrofluoric acid.
15. The liquid-dispensing system according toclaim 14, wherein a part of the housing located between an electromagnetic emitter or the sensor and a path of falling of dispensed liquid comprises a semi-transparent material.
16. An apparatus for providing a control signal for a liquid-dispensing system, the apparatus comprising
an interface configured to receive a sensor signal comprising information related to whether a liquid is dispensed by a nozzle of the liquid-dispensing system; and
a controller configured to detect an erroneous dispensing of liquid by the nozzle based on the sensor signal,
wherein the interface is configured to provide a control signal based on a detected erroneous dispensing of liquid by the nozzle.
17. The apparatus according toclaim 16, wherein the sensor signal comprises information related to electromagnetic radiation measured by a sensor, wherein the controller is configured to compare an radiation intensity level of the electromagnetic radiation measured by the sensor to an intensity threshold to detect whether liquid is erroneously dispensed by the nozzle.
18. The apparatus according toclaim 16, wherein the controller is configured to provide the control signal to trigger a warning or a stop of the liquid dispensing system if the sensor signal indicates that liquid is dispensed and information related to an activation of the nozzle indicates that the nozzle is deactivated.
19. The apparatus according toclaim 16, wherein the controller is configured to determine an amount of liquid dispensed by the nozzle based on the sensor signal, wherein the controller is configured to provide the control signal to trigger a warning or a stop of the liquid dispensing system if information related to an activation of the nozzle indicates that the nozzle is activated and the amount of liquid dispensed is below a quantity threshold.
20. A method for providing a control signal for a liquid-dispensing system, the method comprising
receiving a sensor signal comprising information related to whether a liquid is dispensed by a nozzle of the liquid-dispensing system;
detecting an erroneous dispensing of liquid by the nozzle based on the sensor signal; and
providing a control signal based on a detected erroneous dispensing of liquid by the nozzle.
US15/666,9282016-08-052017-08-02Liquid-dispensing system, apparatus and methodActive2037-12-29US10906057B2 (en)

Priority Applications (1)

Application NumberPriority DateFiling DateTitle
US17/107,060US12064779B2 (en)2016-08-052020-11-30Liquid-dispensing system, apparatus and method

Applications Claiming Priority (3)

Application NumberPriority DateFiling DateTitle
DE102016114607.2ADE102016114607B4 (en)2016-08-052016-08-05 Liquid delivery system, device and method
DE1020161146072016-08-05
DE102016114607.22016-08-05

Related Child Applications (1)

Application NumberTitlePriority DateFiling Date
US17/107,060ContinuationUS12064779B2 (en)2016-08-052020-11-30Liquid-dispensing system, apparatus and method

Publications (2)

Publication NumberPublication Date
US20180036755A1true US20180036755A1 (en)2018-02-08
US10906057B2 US10906057B2 (en)2021-02-02

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US15/666,928Active2037-12-29US10906057B2 (en)2016-08-052017-08-02Liquid-dispensing system, apparatus and method
US17/107,060Active2039-05-07US12064779B2 (en)2016-08-052020-11-30Liquid-dispensing system, apparatus and method

Family Applications After (1)

Application NumberTitlePriority DateFiling Date
US17/107,060Active2039-05-07US12064779B2 (en)2016-08-052020-11-30Liquid-dispensing system, apparatus and method

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US (2)US10906057B2 (en)
CN (1)CN107688356B (en)
DE (1)DE102016114607B4 (en)

Cited By (5)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US11219912B2 (en)2018-05-242022-01-11Deere & CompanyPlugged sprayer/spreader detection using electromagnetic radiation
US11241004B2 (en)*2018-05-242022-02-08Deere & CompanyPlugged spray nozzle detection using radio-frequency transmissions
US11528294B2 (en)2021-02-182022-12-13SecureworksCorp.Systems and methods for automated threat detection
US11588834B2 (en)2020-09-032023-02-21Secureworks Corp.Systems and methods for identifying attack patterns or suspicious activity in client networks
US11665201B2 (en)2016-11-282023-05-30Secureworks Corp.Computer implemented system and method, and computer program product for reversibly remediating a security risk

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* Cited by examiner, † Cited by third party
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DE102016114607B4 (en)*2016-08-052025-03-20Infineon Technologies Ag Liquid delivery system, device and method
DE102020127823A1 (en)2020-10-222022-04-28Dr. Ing. H.C. F. Porsche Aktiengesellschaft Atomizer arrangement for coating a surface and evaluation unit for such an atomizer arrangement and a robot arrangement

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Publication numberPriority datePublication dateAssigneeTitle
US5559339A (en)*1994-10-311996-09-24Abbott LaboratoriesMethod and apparatus for verifying dispense of a fluid from a dispense nozzle
US5801315A (en)*1995-11-231998-09-01Samsung Electronics Co., Ltd.Developer flow check system and method thereof
US20080028867A1 (en)*2004-09-222008-02-07Tomoshige YamamotoState Detection Device
US20090000391A1 (en)*2005-03-072009-01-01Rea Elektronik GmbhMethod and Device for Measuring a Escaping Liquid
US20100118307A1 (en)*2007-03-132010-05-13Advanced Liquid Logic, Inc.Droplet Actuator Devices, Configurations, and Methods for Improving Absorbance Detection
US20100006667A1 (en)*2008-07-102010-01-14Nielsen Steven EMarker detection mechanisms for use in marking devices and methods of using same
US20100101493A1 (en)*2008-10-272010-04-29Molecular Imprints, Inc.Dispense System
US20120314217A1 (en)*2011-06-132012-12-13Azbil CorporationFluid sensor
US20140130606A1 (en)*2012-11-142014-05-15Daniel Measurement And Control, Inc.System and method for ultrasonic metering using an orifice meter fitting
US20160264436A1 (en)*2015-03-122016-09-15Kenichi HayakawaFluid treatment apparatus

Cited By (5)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US11665201B2 (en)2016-11-282023-05-30Secureworks Corp.Computer implemented system and method, and computer program product for reversibly remediating a security risk
US11219912B2 (en)2018-05-242022-01-11Deere & CompanyPlugged sprayer/spreader detection using electromagnetic radiation
US11241004B2 (en)*2018-05-242022-02-08Deere & CompanyPlugged spray nozzle detection using radio-frequency transmissions
US11588834B2 (en)2020-09-032023-02-21Secureworks Corp.Systems and methods for identifying attack patterns or suspicious activity in client networks
US11528294B2 (en)2021-02-182022-12-13SecureworksCorp.Systems and methods for automated threat detection

Also Published As

Publication numberPublication date
US20210078027A1 (en)2021-03-18
CN107688356B (en)2021-08-03
US10906057B2 (en)2021-02-02
CN107688356A (en)2018-02-13
US12064779B2 (en)2024-08-20
DE102016114607B4 (en)2025-03-20
DE102016114607A1 (en)2018-02-08

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